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A comprehensive low-carbon benefits assessment model for power systems

机译:电力系统的全面低碳益处评估模型

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In response to the severe energy and environmental issues, CO2 emission reduction and low-carbon development are inevitable. China has become the biggest CO2 emitter in the world since 2006. As a major CO2 emission source in China, power industry is facing greater pressure for carbon emission abatement. By applying various low-carbon power technologies and mechanisms, the potential for CO2 emission reduction in power systems is considerable. In this paper, the major low-carbon factors in power systems are identified to reveal the possible low-carbon benefits from different sectors. The tested factors include DSM, smart grid technologies, low-carbon generation technologies, utilization of low-carbon energy and low-carbon power dispatch. Corresponding evaluation methods are then proposed to analyze the low-carbon benefits from different sources quantitatively. On this basis, a general, comprehensive assessment model is developed, which reasonably integrates different kinds of low-carbon benefits in power systems while eliminating overlapped effects. Finally, a numerical case based on data of the Yunnan provincial power system is studied to test the effectiveness of the proposed model.
机译:为应对严重的能量和环境问题,CO 2 减排和低碳发育是不可避免的。自2006年以来,中国已成为世界上最大的CO 2 发射器。作为中国的主要CO 2 排放来源,电力行业面临更大的碳排放压力。通过应用各种低碳动力技术和机制,电力系统的CO 2 减排的电位相当可观。在本文中,鉴定了电力系统的主要低碳因子以揭示不同部门可能的低碳益处。测试的因素包括DSM,智能电网技术,低碳发电技术,低碳能源和低碳功率调度的利用率。然后提出了相应的评估方法以定量地分析来自不同来源的低碳益处。在此基础上,开发了一般的综合评估模型,这合理地整合了电力系统中的不同类型的低碳益处,同时消除了重叠的效果。最后,研究了基于云南省电力系统数据的数值案例来测试所提出的模型的有效性。

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